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  • 2021_Cuxhaven_CH4; Alfred-Wegener-Institute; DATE/TIME; dissolved methane; Hereon; in situ data; MaGeCH; Methane, dissolved; Methane sensor, -4H- JENA engineering GmbH, CONTROS HydroC® CH₄; Modular Observation Solutions for Earth Systems; MOSES  (1)
  • 2023_MOSES_Elbe-NorthSea; 2023_MOSES_Elbe-NorthSea_KON1; Changing Earth – Sustaining our Future; DATE/TIME; DEPTH, water; DRIFT; Drifter; Helmholtz_ChangingEarth; HYDREX-Stern10_D-319; Identification; LATITUDE; LONGITUDE; Ludwig Prandtl; Modular Observation Solutions for Earth Systems; MOSES  (1)
  • PANGAEA  (2)
  • AMS (American Meteorological Society)
  • ASLO (Association for the Sciences of Limnology and Oceanography)
  • Vereinigung für Angewandte und Allgemeine Mikrobiologie
  • WILEY-BLACKWELL PUBLISHING
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Keywords
Publisher
  • PANGAEA  (2)
  • AMS (American Meteorological Society)
  • ASLO (Association for the Sciences of Limnology and Oceanography)
  • Vereinigung für Angewandte und Allgemeine Mikrobiologie
  • WILEY-BLACKWELL PUBLISHING
Years
  • 1
    Publication Date: 2024-06-17
    Description: The MOSES Elbe 2023 experiment aims at following a water mass from the spring of the Elbe River in the Czech Republic, through the freshwater and tidal sections of the river, into the North Sea, where three ships (Mya II, Littorina, and Ludwig Prandtl) were used covering the marine environment in the German Bight (Sternfahrt 10). In order to follow the water mass from the Elbe estuary numerical simulations were performed to determine the likelihood of a variety of starting points for a drifter release experiment. At the first morning of the cruise model forecasts were used to determine the exact locations where drifters were to be released. The drifters were initially released in groups of three drifters and then supplemented at a later point of time. During the following two and a half weeks, the current drifter positions were revisited from the ships involved to take water samples.
    Keywords: 2023_MOSES_Elbe-NorthSea; 2023_MOSES_Elbe-NorthSea_KON1; Changing Earth – Sustaining our Future; DATE/TIME; DEPTH, water; DRIFT; Drifter; Helmholtz_ChangingEarth; HYDREX-Stern10_D-319; Identification; LATITUDE; LONGITUDE; Ludwig Prandtl; Modular Observation Solutions for Earth Systems; MOSES
    Type: Dataset
    Format: text/tab-separated-values, 4188 data points
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2024-06-13
    Description: The dataset is about temporal variability of dissolved methane along the freshwater-sea continuum in northern Germany. Sensors were installed at fixed stations at in total three sites at different water depths. This dataset is from the station in Cuxhaven (53.8771 N, 8.7048 E) taken at about 2-7m depth (depending on the tide). The data was obtained between 11 April and 28 August 2021 in high frequency measurements (1 min) with a methane sensor from Kongsberg (4H Jena model CONTROS HydroC CH4). Methane concentrations were calculated according to manufacturer's instructions, based on temperature and salinity values from COSYNA Container Cuxhaven. For the quality control of the data a local range of 0.1 – 1000 nmol/L was set, a technical range for the pump power 2 – 8 Watt, a spike and gradient value of 1. Due to heavy biofouling the external pump of the sensor failed, resulting in data gaps. For a more detailed description see the article cited in References.
    Keywords: 2021_Cuxhaven_CH4; Alfred-Wegener-Institute; DATE/TIME; dissolved methane; Hereon; in situ data; MaGeCH; Methane, dissolved; Methane sensor, -4H- JENA engineering GmbH, CONTROS HydroC® CH₄; Modular Observation Solutions for Earth Systems; MOSES
    Type: Dataset
    Format: text/tab-separated-values, 95767 data points
    Location Call Number Expected Availability
    BibTip Others were also interested in ...
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